Safe Collaboration Between Human and Robot in a Context of Intermittent Haptique Interface

Author:

Mugisha Stanley1,Zoppi Matteo1,Molfino Rezia1,Guda Vamsi2,Chevallereau Christine2,Chablat Damien2

Affiliation:

1. University of Genova, Genova, Italy

2. Laboratoire des Sciences du Numérique de Nantes, Nantes, France

Abstract

Abstract In the list of interfaces used to make virtual reality, haptic interfaces allow users to touch a virtual world with their hands. Traditionally, the user’s hand touches the end effector of a robotic arm. When there is no contact, the robotic arm is passive; when there is contact, the arm suppresses mobility to the user’s hand in certain directions. Unfortunately, the passive mode is never completely seamless to the user. Haptic interfaces with intermittent contacts are interfaces using industrial robots that move towards the user when contact needs to be made. As the user is immersed via a virtual reality Head Mounted Display (HMD), he cannot perceive the danger of a collision when he changes his area of interest in the virtual environment. The objective of this article is to describe movement strategies for the robot to be as fast as possible on the contact zone while guaranteeing safety. This work uses the concept of predicting the position of the user through his gaze direction and the position of his dominant hand (the one touching the object). A motion generation algorithm is proposed and then applied to a UR5 robot with an HTC vive tracker system for an industrial application involving the analysis of materials in the interior of a car.

Publisher

American Society of Mechanical Engineers

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Augmented and Virtual Reality Simulation in Industry;Computer;2023-12

2. Motion Strategies for a Cobot in a Context of Intermittent Haptic Interface;Journal of Mechanisms and Robotics;2022-06-21

3. Trajectory Planning in Dynamics Environment: Application for Haptic Perception in Safe Human-Robot Interaction;Digital Human Modeling and Applications in Health, Safety, Ergonomics and Risk Management. Health, Operations Management, and Design;2022

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